Method for producing industrial ammonium dihydrogen phosphate
A kind of ammonium dihydrogen phosphate, production industry technology, applied in the field of chemical engineering, can solve the problems of flammability, failure to meet the requirements, short phosphoric acid purification process, etc., to achieve the effect of reducing production costs and increasing added value
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Embodiment 1
[0035] (1) Get wet-process phosphoric acid (P 2 o 5 The content is 20.2%, SO 4 2- The content is 2.5%, H 2 SiF 6 The content is 1.3%, Fe 2+ Content is 0.25%) 70 tons, add phosphate slurry (P 2 o 5 content of 28%, water content of 30%) 4600 kg (for SO 4 2- 117% of stoichiometric, i.e. phosphate rock slurry excess 17%), the reaction left standstill for 14 hours. Take the supernatant and measure the SO in the supernatant again 4 2- Content is 1.2%, then adds 1800 kilograms of barium carbonate (being SO 4 2-- 106% of stoichiometric, i.e. barium carbonate excess 6%), 505 kilograms of sodium hydroxide (for H 2 SiF 6 100% of stoichiometry), reacted for 0.5 hours.
[0036] (2) Pour the above solution into a neutralization tank, add liquid ammonia for neutralization, and control the pH to 5.5-6.5 to obtain a neutralization slurry.
[0037] (3) filter the neutralized slurry with a plate and frame filter to obtain an ammonium phosphate solution (P 2 o 5 The content is 1...
Embodiment 2
[0040] Wet process phosphoric acid (P 2 o 5 Content is 20.0%, SO 4 2- The content is 2.7%, H 2 SiF 6 The content is 1.4%, Fe 2+ Content is 0.22%) 70 tons, add phosphate slurry (P 2 o 5 content of 28%, water content of 30%) 5137 kg (for SO 4 2- 120% of stoichiometric, i.e. 20% excess phosphate rock slurry), the reaction left standstill for 10 hours. Take the supernatant and measure the phosphoric acid SO again 4 2- Content is 1.2%, then adds 1900 kilograms of barium carbonate (for SO 4 2-- 110% of stoichiometric, i.e. barium carbonate excess 10%), 598 kilograms of sodium hydroxide (as H 2 SiF 6 110% of stoichiometric, i.e. 10% excess sodium hydroxide). React for 1 hour.
[0041] (2) Pour the above solution into a neutralization tank, feed liquid ammonia for neutralization, and control the pH to 5.5-6.5 to obtain a neutralization slurry.
[0042] (3) filter the neutralized slurry with a plate and frame filter to obtain an ammonium phosphate solution (P 2 o 5 T...
Embodiment 3
[0044] Embodiment 3: (1) get wet process phosphoric acid (P 2 o 5 The content is 20.2%, SO 4 2- The content is 2.5%, H 2 SiF 6 The content is 1.3%, Fe 2+ Content is 0.25%) 70 tons, add phosphate slurry (P 2 o 5 content of 28%, water content of 30%) 4324 kg (for SO 4 2- 110% of stoichiometric, i.e. phosphate rock slurry excess 10%), the reaction left standstill for 16 hours. Take the supernatant and measure the SO in the supernatant again 4 2- Content is 1.2%, then adds 1700 kilograms of barium carbonate (being SO 4 2-- 100% of stoichiometric), 505 kg of sodium hydroxide (as H 2 SiF 6 100% of stoichiometry), reacted for 0.6 hours.
[0045] (2) Pour the above solution into a neutralization tank, add liquid ammonia for neutralization, and control the pH to 5.5-6.5 to obtain a neutralization slurry.
[0046] (3) filter the neutralized slurry with a plate and frame filter to obtain an ammonium phosphate solution (P 2 o 5 The content is 17.13%, SO 4 2- The conten...
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